Abstract
Mice incapable of synthesizing the abundant galactolipids of myelin exhibit disrupted paranodal axo-glial interactions in the central and peripheral nervous systems. Using these mutants, we have analyzed the role that axo-glial interactions play in the establishment of axonal protein distribution in the region of the node of Ranvier. Whereas the clustering of the nodal proteins, sodium channels, ankyrin(G), and neurofascin was only slightly affected, the distribution of potassium channels and paranodin, proteins that are normally concentrated in the regions juxtaposed to the node, was dramatically altered. The potassium channels, which are normally concentrated in the paranode/juxtaparanode, were not restricted to this region but were detected throughout the internode in the galactolipid-defi- cient mice. Paranodin/contactin-associated protein (Caspr), a paranodal protein that is a potential neuronal mediator of axon-myelin binding, was not concentrated in the paranodal regions but was diffusely distributed along the internodal regions. Collectively, these findings suggest that the myelin galactolipids are essential for the proper formation of axo-glial interactions and demonstrate that a disruption in these interactions results in profound abnormalities in the molecular organization of the paranodal axolemma.
MeSH Terms
Animals
Ankyrins/analysis
Axons/chemistry,metabolism
Cell Adhesion Molecules/analysis
Cell Communication/physiology
Galactolipids
Galactosyltransferases/deficiency,genetics
Ganglioside Galactosyltransferase
Gene Deletion
Glycolipids/biosynthesis,deficiency,genetics
Membrane Glycoproteins/analysis
Mice
Mice, Knockout
Myelin Sheath/metabolism
Nerve Growth Factors/analysis
Neuroglia/cytology,metabolism
Neuropeptides/analysis
Potassium Channels/analysis
Ranvier's Nodes/chemistry
Sciatic Nerve/chemistry,cytology
Sodium Channels/analysis
Spinal Cord/chemistry,cytology
Chemicals
Ankyrins
Cell Adhesion Molecules
Galactolipids
Glycolipids
Membrane Glycoproteins
Nerve Growth Factors
Neuropeptides
Nfasc protein, mouse
Potassium Channels
Sodium Channels
Galactosyltransferases
Ugt8a protein, mouse
Ganglioside Galactosyltransferase
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Dupree J L
Neuroscience Center, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, USA.
Girault J A
Popko B
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